A platform for research: civil engineering, architecture and urbanism
CFRP-strengthened and corroded RC beams under monotonic and fatigue loads
An experimental program has been carried out to investigate the structural behavior of RC beams strengthened by carbon-fiber-reinforced polymer (CFRP) sheets and exposed to a corrosive environment. A total of eight specimens (120 x 175 x 2,000 mm) were tested. Six specimens were CFRP strengthened and corroded, one specimen was unstrengthened and corroded, and one specimen was neither strengthened nor corroded. Two different strengthening schemes were applied: (1) wrapping the specimen with CFRP sheets; and (2) both specimen wrapping and flexural strengthening. Three specimens were tested under monotonic loading and five specimens were tested in fatigue. The results show that the use of CFRP sheets for strengthening RC beams that are experiencing steel reinforcement corrosion is an efficient technique that can maintain the structural integrity and enhance the structural behavior of such beams. The ultimate monotonic strength of the CFRP strengthened-corroded specimens increased to a level between 37 and 87 % above the predicted strength of a similar unstrengthened-uncorroded (virgin) specimen. The fatigue life of the CFRP strengthened-corroded specimens was increased within a range of 2.5 - 6.0 times that of a similar unstrengthened-corroded specimen but was lower than that of the uncorroded (virgin) specimen.
CFRP-strengthened and corroded RC beams under monotonic and fatigue loads
An experimental program has been carried out to investigate the structural behavior of RC beams strengthened by carbon-fiber-reinforced polymer (CFRP) sheets and exposed to a corrosive environment. A total of eight specimens (120 x 175 x 2,000 mm) were tested. Six specimens were CFRP strengthened and corroded, one specimen was unstrengthened and corroded, and one specimen was neither strengthened nor corroded. Two different strengthening schemes were applied: (1) wrapping the specimen with CFRP sheets; and (2) both specimen wrapping and flexural strengthening. Three specimens were tested under monotonic loading and five specimens were tested in fatigue. The results show that the use of CFRP sheets for strengthening RC beams that are experiencing steel reinforcement corrosion is an efficient technique that can maintain the structural integrity and enhance the structural behavior of such beams. The ultimate monotonic strength of the CFRP strengthened-corroded specimens increased to a level between 37 and 87 % above the predicted strength of a similar unstrengthened-uncorroded (virgin) specimen. The fatigue life of the CFRP strengthened-corroded specimens was increased within a range of 2.5 - 6.0 times that of a similar unstrengthened-corroded specimen but was lower than that of the uncorroded (virgin) specimen.
CFRP-strengthened and corroded RC beams under monotonic and fatigue loads
Mit carbonfaserverstärktem Kunststoff verstärkte und korrodierte Stahlbetonträger unter monotonen und Ermüdungsbelastungen
Masoud, S. (author) / Soudki, K. (author) / Topper, T. (author)
Journal of Composites for Construction ; 5 ; 228-236
2001
9 Seiten, 9 Bilder, 3 Tabellen, 12 Quellen
Article (Journal)
English
Stahlbeton , Träger (Bauwesen) , Korrosion , Korrosionsschutzschicht , carbonfaserverstärkter Kunststoff , Belastungsprüfung (Mechanik) , Ermüdungslebensdauer , statische Belastung , mechanische Verstärkung , Festigkeitserhöhung , Umhüllung , Biegefestigkeit , Epoxidharz , Bruchfestigkeit , Steifigkeit
CFRP-Strengthened and Corroded RC Beams under Monotonic and Fatigue Loads
Online Contents | 2001
|CFRP-Strengthened and Corroded RC Beams under Monotonic and Fatigue Loads
British Library Online Contents | 2001
|Experimental Study of Corroded RC Beams Strengthened with CFRP under Fatigue and Monotonic Loads
British Library Conference Proceedings | 2011
|Experimental Study of Corroded RC Beams Strengthened with CFRP under Fatigue and Monotonic Loads
Trans Tech Publications | 2011
|Fatigue Life Prediction of Corroded RC Beams Strengthened with CFRP under Repeated Loads
British Library Conference Proceedings | 2012
|